PO.ET09.05 · 实验与分子治疗

一种强效TOP2毒剂,具有稳健的临床前疗效和良好的治疗窗口,支持在胰腺癌中开展临床评估

A potent TOP2 poison with robust preclinical efficacy and a favorable therapeutic window supporting clinical evaluation in pancreatic cancer

海报缩略图:一种强效TOP2毒剂,具有稳健的临床前疗效和良好的治疗窗口,支持在胰腺癌中开展临床评估
编号 5769 展板 27 时间 4/21 02:00–05:00 区域 Section 14 主讲 Waldemar Priebe, MS;PhD
分会场 Multi-Axis Antineoplastic Agents
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作者与单位 Authors & Affiliations

Krzysztof Grela, Stanislaw Skora, Izabela Fokt, Edd Felix, Zofia Zielinska, Mihai G. Iurascu, Mateusz Kwasnik, Rafal Zielinski, Waldemar Priebe

UT MD Anderson Cancer Center, Houston, TX

摘要 Abstract

中文摘要
背景。拓扑异构酶2α(TOP2A)在胰腺导管腺癌(PDAC)中过表达,其表达与不良预后及转移潜能增加密切相关。目前已有多种靶向TOP2A的药物,包括多柔比星(DOX),但均未成为有效的PDAC治疗手段。Annamycin(ANN)是DOX的一种强效、无心脏毒性的类似物,但与DOX不同,其在胰腺中高度蓄积,并在原位人源PDAC模型中显示出稳健的抗肿瘤活性。目前正作为脂质体制剂(L-ANN)在AML患者的3期临床试验中进行评估。 目的。我们的目的是利用PDAC的同基因KPC细胞系模型评估L-ANN的临床前抗癌疗效,以及L-ANN对肿瘤微环境的潜在影响。 方法。在完全免疫健全小鼠(C57BL/6)的PDAC同基因KPC模型中评估L-ANN的体内疗效。采用生物发光成像(BLI)和超声成像(USI)测定肿瘤进展。采用LC/MS/MS评估血浆和肿瘤中的ANN水平。使用Aperio Image Scope对残余肿瘤组织的免疫组化分析进行定量。 结果。KPC模型来源于基因工程小鼠,通常以显著免疫抑制的肿瘤微环境为特征。所有小鼠均原位注射已建立的KPC细胞,并表现出一致的肿瘤生长,第20天平均重量为654.6±83.8 mg。然而,接受3次每周L-ANN注射(4 mg/kg,静脉注射,自第7天开始)的小鼠肿瘤显著缩小(103.5±34.1 mg),其中3只小鼠出现完全消退。肿瘤重量与BLI和USI数据相关,证实了L-ANN组肿瘤生长的显著抑制。注射后1小时在残余肿瘤组织中测得高水平ANN(5.8±0.5 µg/kg),约为平均血浆水平(0.83±0.1 µg/ml)的7倍。离体分析显示,与溶媒处理小鼠相比,残余肿瘤中DNA损伤水平增加(pH2A gamma分别为35.3±5.4%对5.8±0.3%)。肿瘤免疫谱分析显示仅在L-ANN处理的小鼠中出现CD8+和CD4+细胞的显著浸润,提示它们参与了ANN的抗肿瘤活性。T细胞清除实验有待验证CD8+ T细胞在抗肿瘤反应中的作用。 结论。我们的临床前研究证明L-ANN在多种PDAC模型中具有稳健的抗肿瘤活性,包括既往的人源PDAC模型以及现在的可植入同基因免疫健全KPC模型,且这种活性与肿瘤对L-ANN的高摄取相关。结合正在进行的临床试验中确立的L-ANN低毒性特征(如无心脏毒性),这些数据为L-ANN在PDAC患者中的临床评估提供了依据。
查看英文原文 English abstract
Background. Topoisomerase 2 alpha ( TOP2A) is overexpressed in pancreatic ductal adenocarcinoma (PDAC) and its expression strongly correlates with poor prognosis and increased metastatic potential. Several TOP2A targeting drugs, including doxorubicin (DOX) are available, but none represent effective PDAC treatment modalities. Annamycin (ANN), a potent, non-cardiotoxic analog of DOX, but in contrast to DOX exhibits high accumulation in the pancreas and displays robust antitumor activity in orthotopic human PDAC models. It is currently being evaluated as a liposome formulation (L-ANN) in Phase 3 clinical trials in AML patients. Objective. Our objective was to assess the preclinical anticancer efficacy of L-ANN using the syngeneic KPC cell line model for PDAC, and the potential impact of L-ANN on the tumor microenvironment. Methods. In vivo efficacy of L-ANN was assessed in a KPC syngeneic model of PDAC in fully immunocompetent mice (C57BL/6). Tumor progression was measured using bioluminescence imaging (BLI) and ultrasound imaging (USI). ANN levels in plasma and tumors were assessed using LC/MS/MS. Immunohistochemistry analysis of residual tumor tissue were quantified using Aperio Image Scope. Results. The KPC model is derived from genetically engineered mice, in general characterized by profoundly immunosuppressive tumor microenvironment. All mice were injected orthotopically with established KPC cells and showed consistent tumor growth with an average weight of 654.6± 83.8 mg at day 20. However, mice that received 3 weekly L-ANN injections at 4 mg/kg (IV, starting day 7) had significantly reduced tumors (103.5±34.1 mg), with 3 mice exhibiting complete regression. Tumor weight correlated with BLI and USI data and confirmed the dramatic inhibition of tumor growth in the L-ANN cohort. High levels of ANN were measured in residual tumor tissue 1h post injection (5.8±0.5 µg/kg) and were roughly 7-fold higher than the average plasma levels (0.83±0.1 µg/ml). Ex vivo analysis revealed increased levels of DNA damage in residual tumors when compared to vehicle-treated mice (pH2A gamma 35.3±5.4% vs. 5.8±0.3%, respectively). Immune profiling of the tumors revealed significant infiltration of CD8+ and CD4+ cells only in L-ANN treated mice, suggesting their contribution to the antitumor activity of ANN. T cell ablation experiments warrant verification of the role played by CD8+ T cells in the antitumor response. Conclusion. Our preclinical studies demonstrate robust antitumor activity of L-ANN in different PDAC models, including prior human PDAC models and now an implantable syngeneic immunocompetent KPC model, that correlates with high tumor uptake of L-ANN. Along with low toxicity prolife of L-ANN (e.g. lack of cardiotoxicity) established in ongoing clinical trials, these data substantiate the clinical evaluation of L-ANN in PDAC patients.
利益披露 Disclosure
K. Grela, Moleculin LLC Employment, Stock, Stock Option. S. Skora, None. I. Fokt, Moleculin Biotech Inc Stock, Stock Option, consultanship. E. Felix, Moleculin LLC Stock, Stock Option, Other, consultantship. Z. Zielinska, None.. M. G. Iurascu, None.. M. Kwasnik, None. R. Zielinski, Moleculin LLC Stock, Stock Option, consultantship. W. Priebe, Moleculin Biotech Inc Stock, Stock Option, ), Travel, Patent, member of the scientific advisory board.

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